首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Surface and sub-surface oxidation of α-Cu-(17 at.%)Al(100) studied by X-ray photo-electron spectroscopy and low energy He~+ scattering spectroscopy
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Surface and sub-surface oxidation of α-Cu-(17 at.%)Al(100) studied by X-ray photo-electron spectroscopy and low energy He~+ scattering spectroscopy

机译:X射线光电子能谱和低能He〜+散射谱研究α-Cu-(17 at。%)Al(100)的表面和亚表面氧化

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In this study the initial stages of oxidation of the α-Cu-(17 at.%)Al(100) single crystal oriented alloy surface was investigated by X-ray photo-electron spectroscopy and low energy He~+ scattering spectroscopy. It was found that oxygen adsorption can be divided in two sequential stages: (ⅰ) a fast process, up to 15-20 L exposure, in which oxygen adsorbs on the alloy's surface resulting mostly in the formation of Al-O chemisorbed bonds; and (ⅱ) a slower process during which oxygen adsorbs forming Cu-O and Al-O chemisorbed bonds concurrent with diffusion of O to the subsurface and Al segregation to the surface region. The surface oxidation rate is much higher than the sub-surface one. The rate of Al segregation increases with oxygen exposure and involves both surface and sub-surface regions. Annealing of the oxidized alloy surface results in a pronounced segregation of Al and formation of an aluminum oxide layer.
机译:在本研究中,通过X射线光电子能谱和低能He〜+散射光谱研究了α-Cu-(17 at。%)Al(100)单晶取向合金表面的氧化初始阶段。发现氧的吸附可分为两个连续的阶段:(:)快速过程,暴露至15-20 L,其中氧吸附在合金表面上,主要导致形成Al-O化学吸附键; (ⅱ)较慢的过程,在此过程中氧吸收形成Cu-O和Al-O化学吸附键,同时O扩散到表面下,而Al偏析到表面区域。表面氧化速率远高于次表面氧化速率。 Al的偏析速率随暴露于氧气而增加,并且涉及表面和亚表面区域。氧化合金表面的退火导致明显的Al偏析和氧化铝层的形成。

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